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Preparation and characterization of MgO nanoparticles/ferroelectric liquid crystal composites for faster display devices with improved contrastud

机译:mgO纳米粒子/铁电液晶复合材料的制备和表征,用于更快的显示装置,具有更高的对比度 ud

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摘要

In this article, we present the formulation and characterization of a ferroelectric liquid crystal (FLC) mixture W301 composed of pyrimidine compounds. We observed that upon doping magnesium oxide nanoparticles (MgO NPs) into the host FLC, the MgO NPs/FLC composite showed significantly faster response and improved optical tilt angle. The decreased response time in the MgO NPs/FLC composite has been attributed to the decrease in rotational viscosity and increase in surface anchoring energy. The decrease in rotational viscosity of the composite is due to the torque experienced by both MgO NPs and FLC in the presence of an electric field and perturbations of order parameters of FLC. Due to the enhanced surface interaction of MgO NPs having surface defects with mesogens, strong surface anchoring is experienced on the FLC molecules that not only increased the speed of the response but also improved the optical tilt angle of the MgO NPs/FLC composites, which ultimately resulted in improved contrast. A systematic approach has been followed to elucidate the idea of designing faster display devices with improved contrast based on MgO NPs/FLC composites.
机译:在本文中,我们介绍了由嘧啶化合物组成的铁电液晶(FLC)混合物W301的配方和表征。我们观察到,将氧化镁纳米颗粒(MgO NPs)掺杂到主体FLC中后,MgO NPs / FLC复合材料显示出明显更快的响应速度和改善的光学倾斜角。 MgO NPs / FLC复合材料的响应时间缩短归因于旋转粘度的降低和表面锚定能的增加。复合材料的旋转粘度的降低是由于MgO NP和FLC在电场存在下承受的扭矩以及FLC阶次参数的扰动引起的。由于具有表面缺陷的MgO NP与介晶的增强的表面相互作用,在FLC分子上经历了牢固的表面锚固,不仅提高了响应速度,而且还改善了MgO NP / FLC复合材料的光学倾斜角,最终导致对比度提高。遵循了系统的方法来阐明基于MgO NPs / FLC复合材料设计具有更高对比度的更快显示设备的想法。

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